Funding Information: Funding: This research was funded by the Academy of Finland Flagship Program, Photonics Research and Innovation (PREIN), decision number: 320167. Publisher Copyright: © 2021 by the author. Licensee MDPI, Basel, Switzerland.When modelling the absorption in semiconductor nanowire (NW) arrays for solar cell and photodetector applications, the array is typically assumed to be infinitely periodic such that a single unit cell suffices for the simulations. However, any actual array is of a finite extent and might also show varying types of localized defects such as missing or electrically non-contacted individual NWs. Here, we study InP NWs of 2000 nm in length and 180 nm in diameter, placed in a square array of 400 nm in peri...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
We analyze the absorption of solar radiation by silicon nanowire arrays, which are being considered ...
Semiconductor nanowires (NWs) possess a fascinating ability to efficiently collect and trap light in...
When modelling the absorption in semiconductor nanowire (NW) arrays for solar cell and photodetector...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Vertical arrays of direct band gap III-V semiconductor nanowires (NWs) hold the prospect of cheap an...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We present a theoretical study of the absorption of light in periodic arrays of InP nanowires. The a...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
An understanding of the absorption of light is essential for efficient photovoltaic and photodetecti...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
Semiconductor nanowire arrays have shown promise for next-generation photovoltaics and photodetectio...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
We analyze the absorption of solar radiation by silicon nanowire arrays, which are being considered ...
Semiconductor nanowires (NWs) possess a fascinating ability to efficiently collect and trap light in...
When modelling the absorption in semiconductor nanowire (NW) arrays for solar cell and photodetector...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Vertical arrays of direct band gap III-V semiconductor nanowires (NWs) hold the prospect of cheap an...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We present a theoretical study of the absorption of light in periodic arrays of InP nanowires. The a...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
An understanding of the absorption of light is essential for efficient photovoltaic and photodetecti...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
Semiconductor nanowire arrays have shown promise for next-generation photovoltaics and photodetectio...
This thesis describes optical and electrical modelling of vertically oriented III-V semiconductor na...
We analyze the absorption of solar radiation by silicon nanowire arrays, which are being considered ...
Semiconductor nanowires (NWs) possess a fascinating ability to efficiently collect and trap light in...